平版印刷术
材料科学
纳米技术
3D打印
半导体
发电机(电路理论)
光电子学
复合材料
量子力学
物理
功率(物理)
作者
Seongheon Baek,Hyeong Woo Ban,Sanggyun Jeong,Seung Hwae Heo,Da Hwi Gu,Wooyong Choi,Seungjun Choo,Yae Eun Park,Jisu Yoo,Moon Kee Choi,Jiseok Lee,Jae Sung Son
标识
DOI:10.1038/s41467-022-33040-2
摘要
Optical three-dimensional (3D) printing techniques have attracted tremendous attention owing to their applicability to mask-less additive manufacturing, which enables the cost-effective and straightforward creation of patterned architectures. However, despite their potential use as alternatives to traditional lithography, the printable materials obtained from these methods are strictly limited to photocurable resins, thereby restricting the functionality of the printed objects and their application areas. Herein, we report a generalised direct optical printing technique to obtain functional metal chalcogenides via digital light processing. We developed universally applicable photocurable chalcogenidometallate inks that could be directly used to create 2D patterns or micrometre-thick 2.5D architectures of various sizes and shapes. Our process is applicable to a diverse range of functional metal chalcogenides for compound semiconductors and 2D transition-metal dichalcogenides. We then demonstrated the feasibility of our technique by fabricating and evaluating a micro-scale thermoelectric generator bearing tens of patterned semiconductors. Our approach shows potential for simple and cost-effective architecturing of functional inorganic materials.
科研通智能强力驱动
Strongly Powered by AbleSci AI